带有热扩散保护层的玻璃生产铜冷却器性能损失的结构机理

Valery M. KONSTANTINOV, Ilya V. PLETENEV, Vladimir G. DASHKEVICH, Mitrofan A. SUDNIKOV
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引用次数: 0

摘要

对增加铜制除热装置元件的电阻的选择进行了一般评估。研究了M1级铜热扩散含铝保护层高温腐蚀破坏的特点,这是造成效率损失最常见的原因。提出了玻璃生产冷却器片层元件热扩散保护层的破坏机制,这是由两种相互竞争的过程引起的-层“吸收”和相相互作用过程中的结构变化。研究了纯弯曲过程中保护层的力学破坏特征和产品内部形成穿透裂纹的过程。采用纳米压痕法研究了扩散层主要结构组分的弹塑性性能,建立了其塑性指数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
STRUCTURAL MECHANISM OF PERFORMANCE LOSS OF COPPER COOLERS OF GLASS PRODUCTION WITH THERMAL DIFFUSION PROTECTIVE LAYER
A general assessment of options for increasing the resistance of elements of heat-removing devices made of copper is carried out. The peculiarity of high-temperature corrosion destruction of thermal diffusion aluminum- containing protective layer on M1 grade copper as the most common cause of loss of efficiency is studied. The proposed mechanism for the destruction of the thermal diffusion protective layer on the lamellar element of a cooler of glass production is shown, which is caused by two competing processes — layer “resorption” and structural changes during phase interaction. The mechanical destruction features of the protective layer are studied during pure bending and the formation of penetrating cracks deep into the product. The elastoplastic properties of the main structural components of the diffusion layer are studied by the nanoindentation method, and the values of their plasticity index are established.
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